arXiv:nucl-th/9608025·v1·Nuclear Theory
Isospin Lattice-Gas Model and Liquid-Gas Phase Transition in Asymmetric Nuclear Matter
S. Ray🇮🇳 · J. Shamanna🇺🇸 · T. T. S. Kuo🇺🇸
Abstract
An isospin lattice-gas model, which is a spin-1 Ising model, is employed to investigate the liquid-gas phase transition in asymmetric nuclear matter. We consider nuclear matter as a lattice where each lattice site can be either empty or occupied by a proton or a neutron, with a nearest-neighbor interaction among the nucleons. With the Bragg-Williams mean field approximation, we calculate various thermodynamic properties of nuclear matter for different densities and different proton-neutron asymmetry parameter . Our model exhibits liquid-gas phase transition below a critical temperature , and predicts a monotonic decreasing of as the magnitude of is increased. The dependence of the nuclear matter isotherms on the asymmetry parameter is discussed.
Comments: 13 pages LaTex, 6 figures available on request at kuo@nuclear.physics.sunysb.edu